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The photocatalytic degradation of atrazine on nanoparticulate TiO2 films
TA McMurray,
PSM Dunlop
,
JA Byrne
School of Engineering
Faculty Of Computing, Eng. & Built Env.
Research output
:
Contribution to journal
›
Article
›
peer-review
123
Citations (Scopus)
Overview
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Engineering & Materials Science
Herbicides
100%
Degradation
43%
Organic carbon
38%
Irradiation
25%
Quantum yield
23%
Acids
22%
Catalysts
21%
High performance liquid chromatography
19%
Liquid chromatography
19%
Propanol
18%
Mass spectrometry
16%
Ethanol
12%
Mass transfer
11%
Oxygen
10%
Air
6%
Water
6%
Physics & Astronomy
cyanuric acid
51%
degradation
47%
liquid chromatography
34%
catalysts
23%
carbon
16%
irradiation
16%
products
16%
contaminants
12%
ethyl alcohol
12%
mass spectroscopy
12%
mass transfer
11%
breakdown
9%
reactors
9%
oxygen
7%
kinetics
7%
air
7%
water
7%
performance
5%
Chemistry
Atrazine
77%
Cyanuric Acid
35%
Liquid Film
30%
Organic Carbon
27%
Deisopropylatrazine
22%
Liquid Chromatography Mass Spectrometry (LCMS)
12%
Degradation Rate
12%
Quantum Yield
10%
Catalyst
10%
Mass Transfer
10%
Environmental Pollutant
10%
Liquid Chromatography
9%
Dioxygen
6%